fix the following checkpatch warning:

ERROR: Macros starting with if should be enclosed by a do - while
loop to avoid possible if/else logic defects
33: FILE: drivers/staging/rtl8723bs/core/rtw_security.c:33:
+#define WEP_SW_ENC_CNT_INC(sec, ra) \
--
ERROR: Macros starting with if should be enclosed by a do - while
loop to avoid possible if/else logic defects
41: FILE: drivers/staging/rtl8723bs/core/rtw_security.c:41:
+#define WEP_SW_DEC_CNT_INC(sec, ra) \
--
ERROR: Macros starting with if should be enclosed by a do - while
loop to avoid possible if/else logic defects
49: FILE: drivers/staging/rtl8723bs/core/rtw_security.c:49:
+#define TKIP_SW_ENC_CNT_INC(sec, ra) \
--
ERROR: Macros starting with if should be enclosed by a do - while
loop to avoid possible if/else logic defects
57: FILE: drivers/staging/rtl8723bs/core/rtw_security.c:57:
+#define TKIP_SW_DEC_CNT_INC(sec, ra) \
--
ERROR: Macros starting with if should be enclosed by a do - while
loop to avoid possible if/else logic defects
65: FILE: drivers/staging/rtl8723bs/core/rtw_security.c:65:
+#define AES_SW_ENC_CNT_INC(sec, ra) \
--
ERROR: Macros starting with if should be enclosed by a do - while
loop to avoid possible if/else logic defects
73: FILE: drivers/staging/rtl8723bs/core/rtw_security.c:73:
+#define AES_SW_DEC_CNT_INC(sec, ra) \
--
ERROR: Macros with multiple statements should be enclosed in a
do - while loop
2082: FILE: drivers/staging/rtl8723bs/core/rtw_security.c:2082:
+#define ROUND(i, d, s) \

Signed-off-by: Fabio Aiuto <fabioaiut...@gmail.com>
---
 drivers/staging/rtl8723bs/core/rtw_security.c | 94 +++++++++++--------
 1 file changed, 54 insertions(+), 40 deletions(-)

diff --git a/drivers/staging/rtl8723bs/core/rtw_security.c 
b/drivers/staging/rtl8723bs/core/rtw_security.c
index 44e2b362c867..c92984fcf42d 100644
--- a/drivers/staging/rtl8723bs/core/rtw_security.c
+++ b/drivers/staging/rtl8723bs/core/rtw_security.c
@@ -31,52 +31,64 @@ const char *security_type_str(u8 value)
 
 #ifdef DBG_SW_SEC_CNT
 #define WEP_SW_ENC_CNT_INC(sec, ra) \
-       if (is_broadcast_mac_addr(ra)) \
-               sec->wep_sw_enc_cnt_bc++; \
-       else if (is_multicast_mac_addr(ra)) \
-               sec->wep_sw_enc_cnt_mc++; \
-       else \
-               sec->wep_sw_enc_cnt_uc++;
+       do { \
+               if (is_broadcast_mac_addr(ra)) \
+                       sec->wep_sw_enc_cnt_bc++; \
+               else if (is_multicast_mac_addr(ra)) \
+                       sec->wep_sw_enc_cnt_mc++; \
+               else \
+                       sec->wep_sw_enc_cnt_uc++; \
+       } while (0)
 
 #define WEP_SW_DEC_CNT_INC(sec, ra) \
-       if (is_broadcast_mac_addr(ra)) \
-               sec->wep_sw_dec_cnt_bc++; \
-       else if (is_multicast_mac_addr(ra)) \
-               sec->wep_sw_dec_cnt_mc++; \
-       else \
-               sec->wep_sw_dec_cnt_uc++;
+       do { \
+               if (is_broadcast_mac_addr(ra)) \
+                       sec->wep_sw_dec_cnt_bc++; \
+               else if (is_multicast_mac_addr(ra)) \
+                       sec->wep_sw_dec_cnt_mc++; \
+               else \
+                       sec->wep_sw_dec_cnt_uc++; \
+       } while (0)
 
 #define TKIP_SW_ENC_CNT_INC(sec, ra) \
-       if (is_broadcast_mac_addr(ra)) \
-               sec->tkip_sw_enc_cnt_bc++; \
-       else if (is_multicast_mac_addr(ra)) \
-               sec->tkip_sw_enc_cnt_mc++; \
-       else \
-               sec->tkip_sw_enc_cnt_uc++;
+       do { \
+               if (is_broadcast_mac_addr(ra)) \
+                       sec->tkip_sw_enc_cnt_bc++; \
+               else if (is_multicast_mac_addr(ra)) \
+                       sec->tkip_sw_enc_cnt_mc++; \
+               else \
+                       sec->tkip_sw_enc_cnt_uc++; \
+       } while (0)
 
 #define TKIP_SW_DEC_CNT_INC(sec, ra) \
-       if (is_broadcast_mac_addr(ra)) \
-               sec->tkip_sw_dec_cnt_bc++; \
-       else if (is_multicast_mac_addr(ra)) \
-               sec->tkip_sw_dec_cnt_mc++; \
-       else \
-               sec->tkip_sw_dec_cnt_uc++;
+       do { \
+               if (is_broadcast_mac_addr(ra)) \
+                       sec->tkip_sw_dec_cnt_bc++; \
+               else if (is_multicast_mac_addr(ra)) \
+                       sec->tkip_sw_dec_cnt_mc++; \
+               else \
+                       sec->tkip_sw_dec_cnt_uc++; \
+       } while (0)
 
 #define AES_SW_ENC_CNT_INC(sec, ra) \
-       if (is_broadcast_mac_addr(ra)) \
-               sec->aes_sw_enc_cnt_bc++; \
-       else if (is_multicast_mac_addr(ra)) \
-               sec->aes_sw_enc_cnt_mc++; \
-       else \
-               sec->aes_sw_enc_cnt_uc++;
+       do { \
+               if (is_broadcast_mac_addr(ra)) \
+                       sec->aes_sw_enc_cnt_bc++; \
+               else if (is_multicast_mac_addr(ra)) \
+                       sec->aes_sw_enc_cnt_mc++; \
+               else \
+                       sec->aes_sw_enc_cnt_uc++; \
+       } while (0)
 
 #define AES_SW_DEC_CNT_INC(sec, ra) \
-       if (is_broadcast_mac_addr(ra)) \
-               sec->aes_sw_dec_cnt_bc++; \
-       else if (is_multicast_mac_addr(ra)) \
-               sec->aes_sw_dec_cnt_mc++; \
-       else \
-               sec->aes_sw_dec_cnt_uc++;
+       do { \
+               if (is_broadcast_mac_addr(ra)) \
+                       sec->aes_sw_dec_cnt_bc++; \
+               else if (is_multicast_mac_addr(ra)) \
+                       sec->aes_sw_dec_cnt_mc++; \
+               else \
+                       sec->aes_sw_dec_cnt_uc++; \
+       } while (0)
 #else
 #define WEP_SW_ENC_CNT_INC(sec, ra)
 #define WEP_SW_DEC_CNT_INC(sec, ra)
@@ -2080,10 +2092,12 @@ static void rijndaelEncrypt(u32 rk[/*44*/], u8 pt[16], 
u8 ct[16])
        s3 = GETU32(pt + 12) ^ rk[3];
 
 #define ROUND(i, d, s) \
-d##0 = TE0(s##0) ^ TE1(s##1) ^ TE2(s##2) ^ TE3(s##3) ^ rk[4 * i]; \
-d##1 = TE0(s##1) ^ TE1(s##2) ^ TE2(s##3) ^ TE3(s##0) ^ rk[4 * i + 1]; \
-d##2 = TE0(s##2) ^ TE1(s##3) ^ TE2(s##0) ^ TE3(s##1) ^ rk[4 * i + 2]; \
-d##3 = TE0(s##3) ^ TE1(s##0) ^ TE2(s##1) ^ TE3(s##2) ^ rk[4 * i + 3]
+       do { \
+               d##0 = TE0(s##0) ^ TE1(s##1) ^ TE2(s##2) ^ TE3(s##3) ^ rk[4 * 
i]; \
+               d##1 = TE0(s##1) ^ TE1(s##2) ^ TE2(s##3) ^ TE3(s##0) ^ rk[4 * i 
+ 1]; \
+               d##2 = TE0(s##2) ^ TE1(s##3) ^ TE2(s##0) ^ TE3(s##1) ^ rk[4 * i 
+ 2]; \
+               d##3 = TE0(s##3) ^ TE1(s##0) ^ TE2(s##1) ^ TE3(s##2) ^ rk[4 * i 
+ 3]; \
+       } while (0)
 
        /* Nr - 1 full rounds: */
        r = Nr >> 1;
-- 
2.20.1

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